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1)  self-corrosion
自腐蚀
1.
The zinc electrode also has problems as dendrite,shape change,self-corrosion and passivation.
锌电极存在的主要问题有:枝晶、形变、自腐蚀、钝化等。
2.
The self-corrosion and hygroscopic swelling behavios of a graphite epoxy composite material(GECM) were studied.
研究了碳纤维环氧复合材料(GECM)的自腐蚀行为和吸湿溶胀行为。
2)  natural corrosion
自然腐蚀
3)  free corrosion potential
自腐蚀电位
1.
Results show that,with experimental temperature increased,the average corrosion rate of 125 steel increases gradually,while the free corrosion potential moving toward negative direction,meantime the corrosion current density(Icorr) increased.
结果表明,静态下125钢的平均腐蚀速率随着温度的升高而增大,其自腐蚀电位随温度的升高而负移,同时腐蚀电流密度增大。
2.
The results showed that the free corrosion potential of the alloy shifted negatively when SRB was inoculated,the polarization resistance decreased obviously, which corresponds to an increased corrosion rate.
结果表明,SRB的存在使电极自腐蚀电位快速负移,腐蚀速率显著增加,细菌生长后期极化电阻显著降低。
3.
It shows from the corrosion potential with immersion time that the free corrosion potentials of these coatings are more positive than that of Q235 steel substrate, indicating they both can protect steel from corrosion through shielding role.
腐蚀电位-时间结果表明,两种涂层的自腐蚀电位都比基体的更正,都能起到屏蔽作用保护基体,浸泡中电位向负方向移动说明活化腐蚀过程在继续。
4)  open-circuit potential
自腐蚀电位
1.
Inhibitive effect of molybdate has been compared with EIS experiments, polarized curve analysis and open-circuit potential analysis, and inhibitive effect to copper is also discussed.
本文研究了钼酸盐系列缓蚀剂在中性自来水中对20A碳钢的缓蚀效果,通过交流阻抗分析(EIS)、极化曲线分析和自腐蚀电位分析,详细分析了钼酸盐在不同浓度条件下的缓蚀效果,并且分析、研究了钼酸盐对紫铜的缓蚀机理。
5)  hydrogen-evolution self-corrosion
析氢自腐蚀
6)  self-corrosion potential
自腐蚀电位
1.
The results indicated that with the decreasing of the porosity, the self-corrosion potential of the coatings shifted from Ecorr of Fe to Ecorr of Ni-P.
结果表明:随镀层孔隙率的减少,镀层的自腐蚀电位逐渐从铁的自腐蚀电位向纯镍磷镀层的自腐蚀电位变化。
2.
The results show that with increasing the Cr content,the self-corrosion potential of the Ni-Cr alloy increases and the passivation range gets incerased from 200mV to 600mV.
实验结果表明:随着合金中w(Cr)的增大,合金的自腐蚀电位提高,钝化区间由200mV增大到600mV,钝化膜以由水合Ni的氧化物或氢氧化物组成为主,转变为以Cr的氧化物或氢氧化物组成为主,点蚀击破电位由-0。
补充资料:自调自净自度
【自调自净自度】
 (术语)同自调项。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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